Electrode for battery and fabrication method thereof
An electrode for a battery, comprising an active material and a metallic fabric is disclosed. The metallic fabric comprises fibers being at least partially covered by a coating of nickel or copper, which comprises a layer and a plurality of protrusions protruding from the layer. The active material is attached on the protrusions. The metallic fabric provides a high electrical conductivity and a high mechanical stability, and demonstrates outstanding performance for the use as a current collector of battery.
1. An electrode for a battery comprising:
an active material; and
a fabric comprising one or more fibers, each fiber covered by a copper coating thereby forming a foldable metallic fabric, the copper coating comprising a copper layer and a plurality of copper protrusions protruding from the copper layer such that each copper protrusion has a root formed on the copper layer;
wherein the active material is attached to at least some of the plurality of copper protrusions; and
wherein respective roots of the plurality of copper protrusions evenly cover all fiber surface of each fiber.
2. The electrode of claim 1 , wherein each copper protrusion has a height in a range of 100 nm to 5 μm.
3. The electrode of claim 1 , wherein each copper protrusion has a width in a range of 10 nm to 1 μm.
4. The electrode of claim 1 , wherein the copper layer has a thickness in a range of 100 nm to 1 μm.
5. The electrode of claim 1 , wherein each copper protrusion has a height in a range of 100 nm to 5 μm and a width in a range of 10 nm to 1 μm; and the copper layer has a thickness in a range of 100 nm to 1 μm.
6. The electrode of claim 1 , wherein the active material is sulfur, silicon, lithium metal, lithium titanate, lithium iron phosphate, lithium cobalt oxide or lithium manganite.
7. A battery comprising the electrode of claim 1 .
8. The battery of claim 7 , wherein the active material is lithium titanate; each copper protrusion has a height in a range of 100 nm to 5 μm and a width in a range of 10 nm to 1 μm; and the copper layer has a thickness in a range of 100 nm to 1 μm.